首页> 外文期刊>Journal of the American Chemical Society >AB INITIO AND EXPERIMENTAL STUDIES ON THE PROTONATION OF GLUCOSE IN THE GAS PHASE
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AB INITIO AND EXPERIMENTAL STUDIES ON THE PROTONATION OF GLUCOSE IN THE GAS PHASE

机译:气相中葡萄糖质子化的从头算和实验研究

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Protonations of alpha- and beta-D-glucopyranose in the gas phase were investigated using the ab initio molecular orbital approach at the HF/6-31G* level with full geometry optimization. Minimum-energy structures of three neutral and six protonated species for each anomer were calculated, Geometries, energies, and intramolecular hydrogen bonding in these structures are discussed. For the neutral species at 298 K the order of stability for the hydroxymethyl conformers is calculated to be GT > CG > TG for the a anomer and GG > CT > TG fur the beta anomer. Protonated species that least disrupt the internal hydrogen bonding network in the neutral species are considered: these include protonations on the oxygen sites labeled as the hydroxymethyl O6, the ring O5, and the exocylic hydroxyl O4. The O6 protonation in the TG conformation is electronically most favored. Energy corrections fur basis-set deficiency and electron-correlation omission in the adopted theoretical procedure were estimated from high-level calculations on ethanol, 2-propanol, and dimethyl ether. In addition, the gas-phase basicity (GB) of glucose was measured by proton transfer reactions in a Fourier transform ion cyclotron resonance mass spectrometer. The experimental GB values for both anomers were determined to be 188 +/- 3 kcal/mol. The experimental values are compared with the ab initio estimates of 178-190 and 177-189 kcal/mol for the respective alpha and beta anomers. Theoretical structures for the lowest-electronic-energy protonated species in the three hydroxymethyl conformations of each anomer are also presented to serve as reference data for postulating various kinetic pathways.
机译:使用从头算分子轨道方法在HF / 6-31G *水平进行α-和β-D-吡喃葡萄糖的质子化研究,并进行了完整的几何优化。计算了每个端基异构体的三个中性和六个质子化物种的最小能量结构,讨论了这些结构中的几何构型,能量和分子内氢键。对于在298 K的中性物质,羟甲基构象异构体的稳定性顺序被计算为:GT> CG> TG(异头异构体),GG> CT> TG(β异头异构体)。认为质子化的物质至少破坏了中性物质的内部氢键网络:包括在标记为羟甲基O6,环O5和外环羟基O4的氧位上的质子化。 TG构象中的O6质子化在电子上是最受青睐的。通过对乙醇,2-丙醇和二甲醚的高级计算,估算了采用的理论程序中的基校正缺陷和电子相关性遗漏的能量校正。另外,在傅立叶变换离子回旋共振质谱仪中通过质子转移反应来测量葡萄糖的气相碱性(GB)。两种端基异构体的实验GB值确定为188 +/- 3 kcal / mol。将实验值与相应的α和β端基异构体的从头算值178-190和177-189 kcal / mol进行比较。还提出了每个端基异构体的三个羟甲基构象中最低电子能量质子化物质的理论结构,以作为假设各种动力学途径的参考数据。

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